Surface coatings are becoming an integral part of materials. In recent years, molecular coatings have found larger acceptance and uses. Among them, self-assembled monolayers (SAMs) are attractive due to their inherent versatility, manufacturability, and scale up ease. Understanding their structure-properties relationships in realistic conditions remains a major challenge. Here we present a methodology based on simultaneous topographical and nanomechanical characterization of SAMs using a commercially available setup for bimodal atomic force microscopy (AFM). It allows for accurate and quantitative measurement of surface elasticity, which is correlated to molecular ordering through topographical imaging. Our results indicate that effective s...
The morphological and mechanical properties of thiolated ssDNA films self-assembled at different ion...
This paper describes friction experiments and pull-off force measurements using atomic force microsc...
The solution self-assembly of α,ω-alkanedithiols onto Au(111) was investigated using atomic force mi...
Alkanethiol Self-Assembly Monolayers (SAMs) were investigated by means of BiModal Atomic Force Micro...
The structure of self-assembled monolayers (SAMs) of various fluorinated disulfides, perfluoroalkyla...
We studied the development of interfacial energy $\gamma$ of alkanethiol self-assembled monolayers o...
Two polymorphic phases of ω-(4′-methylbiphenyl-4-yl) butane-1-thiol (BP4) molecules formed on Au(111...
The atomic force microscope (AFM) was used to study a series of self-assembled systems: alkanethiol ...
Abstract Thiol self-assembled monolayers (SAMs) are widely used in many nano- and bio-technology app...
The surface stress induced during the formation of alkanethiol [HS(CH 2)nCH3] self-assembled monola...
The understandings and applications of self-assembly have evolved significantly since the adsorption...
Adjacent patches of alkanethiol molecules whose chain lengths range from 11 to 15 carbon atoms are f...
The effect of chain length on the adhesion behaviour of n-alkanethiols $CH_{3}(CH_{2})_{n}SH$, where...
Engineering the next generation of smart materials will require new methods of surface characterizat...
The lattice structure of a variety of self-assembled monolayers (SAMs) on Au(111), derived from dial...
The morphological and mechanical properties of thiolated ssDNA films self-assembled at different ion...
This paper describes friction experiments and pull-off force measurements using atomic force microsc...
The solution self-assembly of α,ω-alkanedithiols onto Au(111) was investigated using atomic force mi...
Alkanethiol Self-Assembly Monolayers (SAMs) were investigated by means of BiModal Atomic Force Micro...
The structure of self-assembled monolayers (SAMs) of various fluorinated disulfides, perfluoroalkyla...
We studied the development of interfacial energy $\gamma$ of alkanethiol self-assembled monolayers o...
Two polymorphic phases of ω-(4′-methylbiphenyl-4-yl) butane-1-thiol (BP4) molecules formed on Au(111...
The atomic force microscope (AFM) was used to study a series of self-assembled systems: alkanethiol ...
Abstract Thiol self-assembled monolayers (SAMs) are widely used in many nano- and bio-technology app...
The surface stress induced during the formation of alkanethiol [HS(CH 2)nCH3] self-assembled monola...
The understandings and applications of self-assembly have evolved significantly since the adsorption...
Adjacent patches of alkanethiol molecules whose chain lengths range from 11 to 15 carbon atoms are f...
The effect of chain length on the adhesion behaviour of n-alkanethiols $CH_{3}(CH_{2})_{n}SH$, where...
Engineering the next generation of smart materials will require new methods of surface characterizat...
The lattice structure of a variety of self-assembled monolayers (SAMs) on Au(111), derived from dial...
The morphological and mechanical properties of thiolated ssDNA films self-assembled at different ion...
This paper describes friction experiments and pull-off force measurements using atomic force microsc...
The solution self-assembly of α,ω-alkanedithiols onto Au(111) was investigated using atomic force mi...